FSL206MRN Fairchild Semiconductor, FSL206MRN Datasheet - Page 11

Power Switch ICs - Power Distribution Low Power FPS

FSL206MRN

Manufacturer Part Number
FSL206MRN
Description
Power Switch ICs - Power Distribution Low Power FPS
Manufacturer
Fairchild Semiconductor
Datasheet

Specifications of FSL206MRN

On Resistance (max)
19 Ohms
Maximum Operating Temperature
+ 115 C
Minimum Operating Temperature
- 40 C
Maximum Power Dissipation
1.3 W
Mounting Style
Through Hole
Off Time (max)
43.6 ns
On Time (max)
6.1 ns
Operating Frequency
67 KHz
Supply Current
0.3 mA
Supply Voltage (min)
26 V
Package / Case
DIP-8
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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© 2010 Fairchild Semiconductor Corporation
FSL206MR • Rev. 1.0.0
Line Under-Voltage Protection (LUVP)
If the input voltage of the converter is lower than the
minimum operating voltage, the converter input current
increases too much, causing components failure. If the
input voltage is low, the converter should be protected.
In the FSL206MR, the LUVP circuit senses the input
voltage using the LS pin and, if this voltage is lower
than 1.5V, the LUVP signal is generated. The
comparator has 0.5V hysteresis. If the LUVP signal is
generated, the output drive block is shut down and the
output voltage feedback loop is saturated.
Soft-Start
The FSL206MR has an internal soft-start circuit that
slowly increases the feedback voltage, together with the
SenseFET current, after it starts up. The typical soft-
start time is 15ms, as shown in Figure 22, where
progressive increments of the SenseFET current are
allowed during the startup phase. The pulse width to the
power switching device is progressively increased to
establish the correct working conditions for transformers,
inductors, and capacitors. The voltage on the output
capacitors is progressively increased with the intention
of smoothly establishing the required output voltage. It
also helps prevent transformer saturation and reduce
the stress on the secondary diode.
Figure 21.
Figure 22.
Line UVP Circuit
+
Internal Soft-Start
11
Burst Operation
To minimize power dissipation in standby mode, the
FPS enters burst mode. As the load decreases, the
feedback voltage decreases. As shown in Figure 23,
the device automatically enters burst mode when the
feedback
continues until the feedback voltage drops below V
At this point, switching stops and the output voltages
start to drop at a rate dependent on the standby current
load. This causes the feedback voltage to rise. Once it
passes V
voltage then falls and the process repeats. Burst mode
alternately enables and disables switching of the
SenseFET and reduces switching loss in standby mode.
Figure 23.
BURH
voltage
, switching resumes. The feedback
drops
Burst-Mode Operation
below
V
BURH
.
www.fairchildsemi.com
Switching
BURL
.

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